首页> 外文期刊>Cellular Physiology and Biochemistry >Stress and Signaling Responses of Rat Skeletal Muscle to Brief Endurance Exercise During Hindlimb Unloading: a Catch-Up Process for Atrophied Muscle
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Stress and Signaling Responses of Rat Skeletal Muscle to Brief Endurance Exercise During Hindlimb Unloading: a Catch-Up Process for Atrophied Muscle

机译:后肢卸载期间大鼠骨骼肌对短时耐力运动的应激和信号响应:萎缩性肌肉的追赶过程

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摘要

At times, exercise accompanied by its anabolic effects is not a tractable countermeasure to muscle atrophy. Instead, training is often attempted after the affected muscle has atrophied greatly as a result of unloading. This study was designed to elucidate stress and signaling mechanisms underlying a process of muscle catch-up growth as a result of transitory exercise during unloading. Rats were exercised daily with a routine of 20- or 40-minute treadmill running (at 60% of maximum oxygen uptake) during the second week of a two-week hindlimb suspension. We examined the expression and activation of heat shock proteins and anabolic and proteolytic markers in the rat soleus muscle. Muscle mass relative to body mass decreased 2.4-fold in the unloaded group (HU) with respect to controls but decreased only 1.7-fold in the 40-min trained group (HT40) (P < 0.05) - equivalent to a 1.4-fold increase in the relative muscle mass over HU. Immunoblotting analyses on whole-tissue lysates demonstrated the following: (1) HSP72 and alpha B-crystallin were upregulated 7- and 2.5-fold, respectively, in HT40 versus HU; (2) phosphorylation of Akt1 and p70/S6K decreased only slightly in HU; (3) when compared to HU, HT40 phosphorylation of Akt1, S6K, and FoxO1 increased 1.4- to 3.0-fold while phosphorylation of FoxO3 was unchanged; and (4) activities of the ubiquitin E3 ligases, calpain 1 and caspase-3 increased 2- to 4-fold in the unloaded groups regardless of exercise duration. These results suggest that the significant upregulation of chaperones and anabolic markers (e.g., HSP72, p-Akt1, p-S6K) in HT40, along with the lack of the training effect on proteolytic activity, is likely crucial for muscle mass catch-up in the unloaded muscle.
机译:有时,运动及其同化作用并不是解决肌肉萎缩的有效方法。取而代之的是,通常在受累肌肉因卸载而严重萎缩之后尝试进行训练。这项研究旨在阐明由于负重运动造成的肌肉追赶生长过程中的压力和信号传导机制。在为期两周的后肢悬吊的第二周内,每天使用20或40分钟的跑步机(最大摄氧量的60%)跑步,对大鼠进行锻炼。我们检查了大鼠比目鱼肌中热休克蛋白以及合成代谢和蛋白水解标记物的表达和激活。相对于对照组,肌肉质量相对于体重下降了2.4倍,而经过40分钟训练的组(HT40)中肌肉仅下降了1.7倍(P <0.05)-相当于增长了1.4倍超过HU的相对肌肉质量对全组织裂解物的免疫印迹分析表明:(1)HT40与HU相比,HSP72和αB-晶状体蛋白分别上调了7倍和2.5倍; (2)HU中Akt1和p70 / S6K的磷酸化仅轻微降低; (3)与HU相比,Akt1,S6K和FoxO1的HT40磷酸化增加了1.4到3.0倍,而FoxO3的磷酸化没有改变。 (4)在无负荷组中,无论运动时间长短,泛素E3连接酶,钙蛋白酶1和半胱天冬酶3的活性增加了2到4倍。这些结果表明,HT40中伴侣蛋白和合成代谢标志物(例如,HSP72,p-Akt1,p-S6K)的显着上调,以及对蛋白水解活性缺乏训练作用,可能对肌肉中的质量追赶至关重要。空载的肌肉。

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